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Covering the Target Objects with Mobile Sensors by Using Genetic Algorithm in Wireless Sensor Networks

机译:通过在无线传感器网络中使用遗传算法将目标物体用移动传感器覆盖

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—Wireless sensor networks have several applications, such as target detection and tracking, and monitoring battlefields. Coverage is one of the most important performance metrics for wireless sensor networks since it reflects how appropriate an event can be detected and monitored in the sensing field. To achieve optimal coverage, an efficient algorithm should be employed to find the best positions of sensor node deployment. In this paper, an efficient genetic algorithm is proposed to solve the coverage problem of the target objects. The optimal number of sensor nodes starts from fewer randomly deployed nodes and increases gradually in subsequence generations. The performance of the proposed genetic algorithm was evaluated, and the simulation results show that this approach can cover all the target objects as well as minimize the number of additional mobile sensor nodes.
机译:- 无利传感器网络具有若干应用,例如目标检测和跟踪,以及监控战场。覆盖范围是无线传感器网络中最重要的性能指标之一,因为它反映了在感应字段中可以检测到并监视活动的恰当。为了实现最佳覆盖范围,应采用高效算法来查找传感器节点部署的最佳位置。本文提出了一种有效的遗传算法来解决目标物体的覆盖问题。最佳数量的传感器节点从较少随机部署的节点开始,并在后代逐渐增加。评估了所提出的遗传算法的性能,仿真结果表明,这种方法可以覆盖所有目标对象,以及最小化额外的移动传感器节点的数量。

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